Multi-objective optimization of manual metal arc welding process parameters for nano-structured hardfacing material using hybrid approach

被引:38
作者
Saha, Abhijit [1 ]
Mondal, Subhas Chandra [2 ]
机构
[1] Haldia Inst Technol, Dept Prod Engn, Haldia 721657, India
[2] Indian Inst Engn Sci & Technol, Dept Mech Engn, Sibpur 711103, India
关键词
Hardfacing; Multi -objective optimization; Manual metal arc welding; Principal component analysis; TOPSIS; GREY RELATIONAL ANALYSIS; SURFACE-ROUGHNESS; TOOL WEAR; TAGUCHI METHOD; CUTTING FORCE; FUZZY TOPSIS; MICROSTRUCTURE; ALLOYS; RESISTANCE; RSA;
D O I
10.1016/j.measurement.2017.01.048
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In the manufacturing industries, welding assisted hardfacing attracted increasing attention for its effective protection against corrosion, thermal shock and abrasion. The presence of nano-particles in hard confronting materials fundamentally upgraded surface to volume proportion appropriately. Moreover, it enhances conductivity, hardness, and wear resistant properties. This paper introduces the multi-objective optimization of manual metal arc welding (MMAW) process parameters. The paramount process variables such as welding current, arc voltage and welding speed have been considered to undergo experiments. The response parameters consider weld bead width, reinforcement and bead hardness. Taguchi's (L25) orthogonal array has been utilized to perform the trial runs. The S/N ratio of Taguchi design is applied to identify optimal parameter settings for the lower bead width which corresponds to welding current of 160 A, arc voltage of 17 V and welding speed of 40 mm/min. Similarly, for the higher reinforcement, it corresponds to welding current of 150 A, arc voltage of 25 V and welding speed of 30 min/min and for bead hardness, welding current of 140 A, arc voltage of 19 V and welding speed of 40 min/min. Moreover, multi -objective optimization was performed using a hybrid approach combining TOPSIS (Technique for order preference by similarity to ideal solution) with PCA (principal component analysis) to identify optimal process parameters. Moreover, TOPSIS-AHP (Analytical hierarchy process) methodologies were used to compare the results with the TOPSIS-PCA. Finally, optimal settings of the input welding parameters correspond to A5V2S1 namely; welding current 160 A (level 5), arc voltage 19 V (level 2) and welding speed 20 mm/min (level 1). (C) 2017 Elsevier Ltd. All rights reserved.
引用
收藏
页码:80 / 89
页数:10
相关论文
共 28 条
[1]   The effect of microstructure on abrasive wear of hardfacing alloys [J].
Buchely, MF ;
Gutierrez, JC ;
León, LM ;
Toro, A .
WEAR, 2005, 259 (1-6) :52-61
[2]   Influence of cutting fluid conditions and cutting parameters on surface roughness and tool wear in turning process using Taguchi method [J].
Debnath, Sujan ;
Reddy, Moola Mohan ;
Yi, Qua Sok .
MEASUREMENT, 2016, 78 :111-119
[3]   Study of surface integrity and dimensional accuracy in EDM using Fuzzy TOPSIS and sensitivity analysis [J].
Dewangan, S. ;
Gangopadhyay, S. ;
Biswas, C. K. .
MEASUREMENT, 2015, 63 :364-376
[4]   A new approach to minimization of the surface roughness and cutting force via fuzzy TOPSIS, multi-objective grey design and RSA [J].
Gok, Arif .
MEASUREMENT, 2015, 70 :100-109
[5]   Optimisation of multiple quality characteristics of hardfacing using grey-based Taguchi method [J].
Ilo, S. ;
Just, Ch ;
Xhiku, F. .
MATERIALS & DESIGN, 2012, 33 :459-468
[6]  
Jagadish A. Ray, 2015, INT J ADV MANUF TECH
[7]   Behaviour of iron-based hardfacing alloys under abrasion and impact [J].
Kirchgassner, M. ;
Badisch, E. ;
Franek, F. .
WEAR, 2008, 265 (5-6) :772-779
[8]   Multi-objective optimization using Taguchi based grey relational analysis for micro-milling of Al 7075 material with ball nose end mill [J].
Kuram, Emel ;
Ozcelik, Babur .
MEASUREMENT, 2013, 46 (06) :1849-1864
[9]   Microstructure and wear properties of Fe-15Cr-2.5Ti-2C-xB wt.% hardfacing alloys [J].
Liu, Dashuang ;
Liu, Renpei ;
Wei, Yanhong ;
Ma, Yan ;
Zhu, Kun .
APPLIED SURFACE SCIENCE, 2013, 271 :253-259
[10]   Optimization of surface roughness and tool wear in hard turning of austempered ductile iron (grade 3) using Taguchi method [J].
Manivel, D. ;
Gandhinathan, R. .
MEASUREMENT, 2016, 93 :108-116